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Updated: Dec 28, 2025

Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
Novel Long Noncoding RNA, Macrophage Inflammation-Suppressing Transcript (MIST), Regulates Macrophage Activation
Kenneth Stapleton1,2, Sadhan Das1, Marpadga A Reddy1
1From the Department of Diabetes Complications and Metabolism, Diabetes and Metabolic Research Institute (K.S, S.D., M.A.R., A.L., V.A., L.L., Z.C., L.Z., R.N.), Beckman Research Institute of City of Hope, Duarte, CA.
Objective:
Systemic low-grade inflammation associated with obesity and metabolic syndrome is a strong risk factor for the development of diabetes mellitus and associated cardiovascular complications. This inflammatory state is caused by release of proinflammatory cytokines by macrophages, especially in adipose tissue. Long noncoding RNAs regulate macrophage activation and inflammatory gene networks, but their role in macrophage dysfunction during diet-induced obesity has been largely unexplored. Approach and Results: We sequenced total RNA from peritoneal macrophages isolated from mice fed either high-fat diet or standard diet and performed de novo transcriptome assembly to identify novel differentially expressed mRNAs and long noncoding RNAs. A top candidate long noncoding RNA, macrophage inflammation-suppressing transcript (Mist), was downregulated in both peritoneal macrophages and adipose tissue macrophages from high-fat diet-fed mice. GapmeR-mediated Mist knockdown in vitro and in vivo upregulated expression of genes associated with immune response and inflammation and increased modified LDL (low-density lipoprotein) uptake in macrophages. Conversely, Mist overexpression decreased basal and LPS (lipopolysaccharide)-induced expression of inflammatory response genes and decreased modified LDL uptake. RNA-pull down coupled with mass spectrometry showed that Mist interacts with PARP1 (poly [ADP]-ribose polymerase-1). Disruption of this RNA-protein interaction increased PARP1 recruitment and chromatin PARylation at promoters of inflammatory genes, resulting in increased gene expression. Furthermore, human orthologous MIST was also downregulated by proinflammatory stimuli, and its expression in human adipose tissue macrophages inversely correlated with obesity and insulin resistance.
Conclusions:
Mist is a novel protective long noncoding RNA, and its loss during obesity contributes to metabolic dysfunction and proinflammatory phenotype of macrophages via epigenetic mechanisms.
Insights
Macrophage inflammation-suppressing transcript (Mist) is a protective long noncoding RNA. Its loss in obesity promotes inflammation and metabolic dysfunction by affecting gene expression through epigenetic mechanisms.
Area of Science:
- Molecular Biology
- Immunology
- Metabolic Disease
Background:
- Obesity and metabolic syndrome cause low-grade inflammation, increasing diabetes and cardiovascular risks.
- Macrophages, particularly in adipose tissue, release proinflammatory cytokines, driving this inflammation.
- The role of long noncoding RNAs (lncRNAs) in macrophage dysfunction during obesity is poorly understood.
Purpose of the Study:
- To identify novel differentially expressed mRNAs and lncRNAs in macrophages from diet-induced obese mice.
- To investigate the function of a candidate lncRNA, macrophage inflammation-suppressing transcript (Mist), in macrophage regulation and metabolic health.
Main Methods:
- Sequencing of total RNA from mouse peritoneal macrophages fed high-fat or standard diets.
- De novo transcriptome assembly to identify differentially expressed genes.
- In vitro and in vivo knockdown/overexpression of Mist, RNA-pull down assays, and mass spectrometry.
Main Results:
- Mist was significantly downregulated in macrophages from high-fat diet-fed mice.
- Mist knockdown upregulated inflammatory genes and modified LDL uptake; Mist overexpression had opposite effects.
- Mist interacts with PARP1, and disruption of this interaction leads to increased inflammatory gene expression via epigenetic modification.
Conclusions:
- Mist is a novel, protective lncRNA that suppresses inflammation and metabolic dysfunction in macrophages.
- Loss of Mist during obesity contributes to a proinflammatory macrophage phenotype through epigenetic regulation involving PARP1.
- Human MIST expression inversely correlates with obesity and insulin resistance, highlighting its clinical relevance.
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